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Quantum Bit and Square Well in Quantum Computation

机译:量子计算中的量子位和方阱

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The spectacular promise of quantum computers is to enable new algorithms which render feasible problems requiring exorbitant resources for their solution on a classical computer. Quantum computation is based on transformation of quantum states. Quantum bits are two-level quantum systems, and as the simplest elementary building blocks for a quantum computer, they provide a convenient labeling for pairs of states and their physical realizations. This paper shows how a single quantum bit can be represented by the two lowest levels in a square well potential, and how simple perturbations of the potential can effect computational operations on the quantum bit. The controlling system is just another quantum system, and it couples to the one we are trying to do quantum computation. These problems lead to decoherence.
机译:量子计算机的宏伟前景是实现新算法,这些算法会提出可行的问题,而这些问题在经典计算机上的解决方案需要大量的资源。量子计算基于量子态的转换。量子位是两级量子系统,作为量子计算机的最简单的基本构建块,它们为状态对及其物理实现提供了方便的标记。本文展示了如何用方阱势中的两个最低位表示单个量子位,以及简单的势能扰动如何影响量子位上的计算操作。控制系统只是另一种量子系统,它与我们正在尝试进行量子计算的系统耦合。这些问题导致退相干。

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